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Expression and function of neuronal nicotinic ACh receptors in rat microvascular endothelial cells.

机译:神经元烟碱型ACh受体在大鼠微血管内皮细胞中的表达和功能。

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摘要

The expression and function of nicotinic ACh receptors (nAChRs) in rat coronary microvascular endothelial cells (CMECs) were examined using RT-PCR and whole cell patch-clamp recording methods. RT-PCR revealed expression of mRNA encoding for the subunits alpha(2), alpha(3), alpha(4), alpha(5), alpha(7), beta(2), and beta(4) but not beta(3). Focal application of ACh evoked an inward current in isolated CMECs voltage clamped at negative membrane potentials. The current-voltage relationship of the ACh-induced current exhibited marked inward rectification and a reversal potential (E(rev)) close to 0 mV. The cholinergic agonists nicotine, epibatidine, and cytisine activated membrane currents similar to those evoked by ACh. The nicotine-induced current was abolished by the neuronal nAChR antagonist mecamylamine. The direction and magnitude of the shift in E(rev) of nicotine-induced current as a function of extracellular Na(+) concentration indicate that the nAChR channel is cation selective and follows that predicted by the Goldman-Hodgkin-Katz equation assuming K(+)/Na(+) permeability ratio of 1.11. In fura-2-loaded CMECs, application of ACh, but not of nicotine, elicited a transient increase in intracellular free Ca(2+) concentration. Taken together, these results demonstrate that neuronal nAChR activation by cholinergic agonists evokes an inward current in CMECs carried primarily by Na(+), which may contribute to the plasma nicotine-induced changes in microvascular permeability and reactivity induced by elevations in plasma nicotine.
机译:使用RT-PCR和全细胞膜片钳记录方法检查了烟碱型ACh受体(nAChRs)在大鼠冠状动脉微血管内皮细胞(CMEC)中的表达和功能。 RT-PCR显示了编码亚基alpha(2),alpha(3),alpha(4),alpha(5),alpha(7),beta(2)和beta(4)而不是beta(4)的mRNA的表达。 3)。 ACh的局部应用在夹在负膜电位的隔离CMEC电压中引起了内向电流。 ACh感应电流的电流-电压关系显示出明显的向内整流和接近0 mV的反向电位(E(rev))。胆碱能激动剂尼古丁,依巴替丁和胱氨酸激活的膜电流类似于ACh引起的电流。尼古丁诱导的电流被神经元nAChR拮抗剂美卡敏消除。尼古丁引起的电流E(rev)随细胞外Na(+)浓度变化的方向和幅度表明,nAChR通道具有阳离子选择性,并遵循由Goldman-Hodgkin-Katz方程假设K( +)/ Na(+)渗透率比为1.11。在呋喃2加载CMEC,ACh,而不是尼古丁的应用,引起细胞内游离Ca(2+)浓度的瞬时增加。两者合计,这些结果表明胆碱能激动剂激活神经元nAChR引起主要由Na(+)携带的CMEC中的内向电流,这可能有助于血浆尼古丁诱导的微血管通透性变化和血浆尼古丁升高引起的反应性。

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